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AbstractAbstract
[en] The interaction of salicylic acid with zirconium diphosphate surface and its reactivity toward uranium (VI) was investigated. The interaction of salicylic acid with zirconium diphosphate was firstly studied using several analytical techniques including atomic force microscopy, scanning electron microscopy and X-ray photoelectron spectroscopy. The sorption of uranium (VI) onto surface-modified zirconium diphosphate was evaluated by the classical batch method at room temperature. This study showed that the uranium (VI) sorption onto zirconium diphosphate is influenced by the presence of salicylic acid. A fluorescence spectroscopy study revealed the presence of a uranyl specie onto the modified solid surface. The spectroscopy results were then used to restrain the modeling of experimental sorption data, which are interpreted in terms of a constant capacitance model using the FITEQL code. The results indicated that interaction between the uranium (VI) and the surface of zirconium diphosphate modified with salicylic acid leads to the formation of a ternary surface complex.
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ATOMIC FORCE MICROSCOPY, BINDING ENERGY, ENERGY RESOLUTION, FLUORESCENCE SPECTROSCOPY, HYDRATION, PH VALUE, RADIOACTIVE WASTE DISPOSAL, RADIONUCLIDE MIGRATION, SALICYLIC ACID, SORPTION, SURFACE PROPERTIES, TEMPERATURE RANGE 0273-0400 K, UNDERGROUND DISPOSAL, URANIUM IONS, URANYL COMPOUNDS, VALENCE, X-RAY DIFFRACTION, X-RAY PHOTOELECTRON SPECTROSCOPY, ZIRCONIUM PHOSPHATES
ACTINIDE COMPOUNDS, CARBOXYLIC ACIDS, CHARGED PARTICLES, COHERENT SCATTERING, DIFFRACTION, ELECTRON SPECTROSCOPY, EMISSION SPECTROSCOPY, ENERGY, ENVIRONMENTAL TRANSPORT, HYDROXY ACIDS, IONS, MANAGEMENT, MASS TRANSFER, MICROSCOPY, ORGANIC ACIDS, ORGANIC COMPOUNDS, OXYGEN COMPOUNDS, PHOSPHATES, PHOSPHORUS COMPOUNDS, PHOTOELECTRON SPECTROSCOPY, RADIOACTIVE WASTE MANAGEMENT, RESOLUTION, SCATTERING, SOLVATION, SPECTROSCOPY, TEMPERATURE RANGE, TRANSITION ELEMENT COMPOUNDS, URANIUM COMPOUNDS, WASTE DISPOSAL, WASTE MANAGEMENT, ZIRCONIUM COMPOUNDS
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